Development and simulation of a numerical model for evaluating the accumulation potential of tritium released from Fukushima Daiichi Nuclear Power Station in edible seaweed along the Fukushima coast

Since August 2023, treated water containing tritium, a hydrogen radionuclide, has been discharged into the coastal Pacific seawater facing Japan, and this discharge is planned to continue for a few decades for gentle release under controlled tritium concentrations in the treated water. This study evaluated the potential accumulation of tritium in edible seaweed on the Fukushima coast under the release conditions of the treated water. The maximum concentration of organically bound tritium (OBT) accumulated was estimated at 10 Bq L −1 (combustion water equivalent concentration) under the continuous release of treated water meeting Tokyo Electric Power Company Holdings' proposed permissible upper-limit tritium concentration of 1500 Bq L −1 . The maximum OBT concentration in seaweed was estimated at <0.1% of the OBT food guideline proposed by Food Agricultural Organization/World Health Organization. This suggests that the release of treated water will not significantly impact the safety and sustainability of the fishery industry.

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Publication Details

Journal
Marine Pollution Bulletin
Published
2026-10-06
DOI
https://doi.org/10.1016/j.marpolbul.2026.120395
Primary Topic
Radioactive contamination and transfer
Type
article
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article

Development and simulation of a numerical model for evaluating the accumulation potential of tritium released from Fukushima Daiichi Nuclear Power Station in edible seaweed along the Fukushima coast

Takashi Tani, Tsubasa Ikenoue, Yuhi Satoh, Hideyuki Kawamura
Marine Pollution Bulletin
Radioactive contamination and transfer
article

Development and simulation of a numerical model for evaluating the accumulation potential of tritium released from Fukushima Daiichi Nuclear Power Station in edible seaweed along the Fukushima coast

Takashi Tani, Tsubasa Ikenoue, Yuhi Satoh, Hideyuki Kawamura
article en

Abstract

Since August 2023, treated water containing tritium, a hydrogen radionuclide, has been discharged into the coastal Pacific seawater facing Japan, and this discharge is planned to continue for a few decades for gentle release under controlled tritium concentrations in the treated water. This study evaluated the potential accumulation of tritium in edible seaweed on the Fukushima coast under the release conditions of the treated water. The maximum concentration of organically bound tritium (OBT) accumulated was estimated at 10 Bq L −1 (combustion water equivalent concentration) under the continuous release of treated water meeting Tokyo Electric Power Company Holdings' proposed permissible upper-limit tritium concentration of 1500 Bq L −1 . The maximum OBT concentration in seaweed was estimated at <0.1% of the OBT food guideline proposed by Food Agricultural Organization/World Health Organization. This suggests that the release of treated water will not significantly impact the safety and sustainability of the fishery industry.

Marine Pollution BulletinVol. 233
Japan Atomic Energy Agency (JP), Institute for Environmental Sciences (JP)
Openalex Percentile: Top 15%
Radioactive contamination and transfer
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Development and simulation of a numerical model for evaluating the accumulation potential of tritium released from Fukushima Daiichi Nuclear Power Station in edible seaweed along the Fukushima coast — Takashi Tani, Tsubasa Ikenoue, et al. · Marine Pollution Bulletin (2026) | TGRS Research Map | TGRS